Title of article :
Adsorption and corrosion inhibitive properties of P(2-aminobenzothiazole) on mild steel in hydrochloric acid media
Author/Authors :
Abd El Rehim, S. S. Ain Shams University - Faculty of Science - Chemistry Department, Egypt , Sayyah, S. M. Beni-Suef University - Faculty of Science - Chemistry Department, Polymer Research Laboratory, Egypt , El-Deeb, M. M. Beni-Suef University - Faculty of Science - Chemistry Department, Polymer Research Laboratory, Egypt , El-Deeb, M. M. Hail University - Faculty of Science - Chemistry Department, Saudi Arabia , Kamal, S. M. Beni-Suef University - Faculty of Science - Chemistry Department, Polymer Research Laboratory, Egypt , Kamal, S. M. Jazan University - Collage of Science - Chemistry Department, Saudi Arabia , Azooz, R. E. Beni-Suef University - Faculty of Science - Chemistry Department, Polymer Research Laboratory, Egypt , Azooz, R. E. Jazan University - Collage of Science - Chemistry Department, Saudi Arabia
From page :
39
To page :
52
Abstract :
Corrosion inhibition of mild steel in hydrochloric acid solutions using electropolymerized Poly 2-aminobenzothiazole, P(2ABT), was evaluated using weight loss, potentiodynamic polarization and electrochemical impedance spectroscopy measurements at different temperature. Results showed that the inhibition efficiency increases with increasing the concentration of P(2ABT) up to 12.7 ˟ 10^-6 mol L^-1 and decreases with raising the temperature. Polarization curves indicate that the studied compound acts as anodic inhibitor. Thermodynamic activation parameters for both dissolution and adsorption processes are calculated and discussed as well as the adsorption isotherms are calculated. Gibbs free energy value confirms the physical nature of the adsorption, also the mechanism of inhibition is discussed. Scanning electron microscopy is used to study the surface morphology of mild steel in hydrochloric acid solution in the absence and presence of 12.7 ˟ 10^-6 mol L^-1 P(2ABT). Data obtained from all techniques are in a good agreement with each other
Keywords :
Polymer , Corrosion inhibition , EIS , Mild steel , Adsorption isotherms
Journal title :
International Journal of Industrial Chemistry (IJIC)
Journal title :
International Journal of Industrial Chemistry (IJIC)
Record number :
2564855
Link To Document :
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